The effect of viscoelasticity on the turbulent kinetic energy cascade

Direct numerical simulations of statistically steady homogeneous isotropic turbulence in viscoelastic fluids described by the FENE-P model, such as those laden with polymers, are presented. It is shown that the strong depletion of the turbulence dissipation reported by previous authors does not nece...

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Detalhes bibliográficos
Autor principal: P. C. Valente (author)
Outros Autores: C. B. da Silva (author), F. T. Pinho (author)
Formato: article
Idioma:eng
Publicado em: 2014
Assuntos:
Texto completo:https://hdl.handle.net/10216/106128
País:Portugal
Oai:oai:repositorio-aberto.up.pt:10216/106128
Descrição
Resumo:Direct numerical simulations of statistically steady homogeneous isotropic turbulence in viscoelastic fluids described by the FENE-P model, such as those laden with polymers, are presented. It is shown that the strong depletion of the turbulence dissipation reported by previous authors does not necessarily imply a depletion of the nonlinear energy cascade. However, for large relaxation times, of the order of the eddy turnover time, the polymers remove more energy from the large scales than they can dissipate and transfer the excess energy back into the turbulent dissipative scales. This is effectively a polymer-induced kinetic energy cascade which competes with the nonlinear energy cascade of the turbulence leading to its depletion. It is also shown that the total energy flux to the small scales from both cascade mechanisms remains approximately the same fraction of the kinetic energy over the turnover time as the nonlinear energy cascade flux in Newtonian turbulence.